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Static and Fatigue Characterization of Nomex Honeycomb Sandwich Panels

机译:Nomex蜂窝夹芯板的静态和疲劳特性

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摘要

The main benefits of using the sandwich concept in structural components are the high stiffness, good fatigue resistance and low weight ratios. Recent advances in materials and construction techniques have resulted in further improvement and increased uniformity of the sandwich composite properties. In order to use these materials in different applications, the knowledge of simply their static properties alone is not sufficient but additional information on their fatigue properties and durability are required. In this paper, first static and fatigue tests on four points bending of nomex honeycomb composite sandwich panels have been performed. Load/displacement and S-N fatigue curves are presented and analysed. Fatigue failure and damage modes are observed with an optical microscope and are discussed. The second is to address such fatigue behaviour by using a damage model and check it by experimentation. This fatigue damage model is based on stiffness degradation, which is used as a damage indicator. Two non-linear cumulative damage models derived from the chosen stiffness degradation equation are examined with assumption of linear Miner's damage summation. Predicted results are compared with available experimental data.
机译:在结构部件中使用三明治概念的主要好处是高刚度,良好的抗疲劳性和低重量比。材料和构造技术的最新进展导致了三明治复合材料性能的进一步改进和均一性。为了在不同的应用中使用这些材料,仅简单地了解它们的静态特性是不够的,但是需要有关它们的疲劳特性和耐久性的其他信息。在本文中,已经对nomex蜂窝状复合夹芯板的四点弯曲进行了首次静态和疲劳测试。给出并分析了载荷/位移和S-N疲劳曲线。用光学显微镜观察疲劳失效和损伤模式并进行讨论。第二个是通过使用损伤模型来解决这种疲劳行为,并通过实验对其进行检查。该疲劳损伤模型基于刚度退化,该刚度退化用作损伤指标。在假定线性Miner损伤总和的前提下,研究了从所选刚度退化方程得出的两个非线性累积损伤模型。将预测结果与可用的实验数据进行比较。

著录项

  • 来源
    《International Review of Civil Engineering》 |2015年第4期|81-87|共7页
  • 作者单位

    LFM Universite de Metz, ENIM Ile du Saulcy, F-57045 Metz cedex,Precision mechanic and Application Laboratory, D.O.M.P Sciences of Engineering Faculty, U.F.A.S 19000 Setif (Algeria),Departement d'Optique et Mecanique de Precision, Faculte des sciences de l'Ingenieur, Universite de Setif, 19000 Setif-Algerie;

    LFM Universite de Metz, ENIM Ile du Saulcy, F-57045 Metz cedex, 2, Pierre Court and Marie Curie 57140 Woippy, France;

    LFM Universite de Metz, ENIM Ile du Saulcy, F-57045 Metz cedex,LFM-ENIM Island of Saulcy 57045 Metz Cedex 1, FRENCH;

    Precision mechanic and Application Laboratory, D.O.M.P Sciences of Engineering Faculty, U.F.A.S 19000 Setif (Algeria),N° 03, Cite des 99 logements Gasria - Setif 19000 - Algeria;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Fatigue Model; Nomex Sandwich; Stiffness; Degradation; Failure Modes;

    机译:疲劳模型Nomex三明治;刚性;降解;失败模式;

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